Question

Table 3.1

Time, t (s)

Position, x (m)

tn/t1

Time Squared, t^2 (s^2)

(tn)^2/(t1)^2

xn/x1

t1, 0.40

x1, 0.25

1.0

.16

1

1

t2, 0.80

x2, 0.36

2.0

.64

4

1.4

t3, 1.2

x3, 0.52

3.0

1.4

9

2.1

t4, 1.6

x4, 0.71

4.0

2.6

16

2.8

t5, 2.0

x5, 0.95

5.0

4.0

25

3.8

t6, 2.4

x6, 1.2

6.0

5.8

36

4.8

Linear fit equation for Position Vs. Time: 0.545x - 0.0530

Quadratic fit equation for Position Vs. Time: 0.123x^2 +0.138 +0.178

Position Vs. Time Squared 1. 0.95 0.71 0.52 0.6 0.4 0.25 0.2 0.36 (0 (0 Time Squared, tA2 (sA2)

Table 3.2

Time

Position/ velocity

vn/v1

t1, 0.45

v1, 0.24

1

t2, 0.95

v2, 0.37

1.5

t3, 1.4

v3, 0.48

2

t4, 1.9

v4, 0.61

2.5

Slope of the graph: 0.246 units idk

Question: By determining a percent difference, compare the accelartion of the car determined from the graph plotted in step 5 to that measured as the slope of the velocity graph?

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Answer #1

https://drive.google.com/file/d/1AmiFI9AhdteR5vl-FOZpDllNa_8lRHhq/view?usp=drivesdk

DATE: Salution 1-7 Quodnaic pet equation tor portion一二time graph hare a 0-25y2 :/° ertD1-0,25y2ー D.1274 LUb

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